首页> 美国卫生研究院文献>Frontiers in Microbiology >The molecular dimension of microbial species: 2. Synechococcus strains representative of putative ecotypes inhabiting different depths in the Mushroom Spring microbial mat exhibit different adaptive and acclimative responses to light
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The molecular dimension of microbial species: 2. Synechococcus strains representative of putative ecotypes inhabiting different depths in the Mushroom Spring microbial mat exhibit different adaptive and acclimative responses to light

机译:微生物物种的分子维度:2.代表蘑菇生态菌垫中不同深度的假定生态型的拟球菌菌株对光表现出不同的适应性和适应性响应

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摘要

Closely related strains of thermophilic Synechococcus were cultivated from the microbial mats found in the effluent channels of Mushroom Spring, Yellowstone National Park (YNP). These strains have identical or nearly identical 16S rRNA sequences but are representative of separate, predicted putative ecotype (PE) populations, which were identified by using the more highly resolving psaA locus and which predominate at different vertical positions within the 1-mm-thick upper-green layer of the mat. Pyrosequencing confirmed that each strain contained a single, predominant psaA genotype. Strains differed in growth rate as a function of irradiance. A strain with a psaA genotype corresponding to a predicted PE that predominates near the mat surface grew fastest at high irradiances, whereas strains with psaA genotypes representative of predominant subsurface populations grew faster at low irradiance and exhibited greater sensitivity to abrupt shifts to high light. The high-light-adapted and low-light-adapted strains also exhibited differences in pigment content and the composition of the photosynthetic apparatus (photosystem ratio) when grown under different light intensities. Cells representative of the different strains had similar morphologies under low-light conditions, but under high-light conditions, cells of low-light-adapted strains became elongated and formed short chains of cells. Collectively, the results presented here are consistent with the hypothesis that closely related, but distinct, ecological species of Synechococcus occupy different light niches in the Mushroom Spring microbial mat and acclimate differently to changing light environments.
机译:从黄石国家公园(YNP)蘑菇泉出水通道中发现的微生物垫上培养密切相关的嗜热球菌菌株。这些菌株具有相同或几乎相同的16S rRNA序列,但代表了单独的预测推定生态型(PE)种群,这些种群通过使用分辨率更高的psaA基因座进行鉴定,并在1毫米厚的上部不同垂直位置占优势-垫子的绿色层。焦磷酸测序证实每个菌株都包含一个单一的主要psaA基因型。菌株的生长率随辐照度而变化。具有psaA基因型的菌株对应于在垫子表面附近占主导地位的预测PE,在高辐照度下生长最快,而具有psaA基因型代表主要的地下种群的菌株在低辐照度下生长更快,并且对强光突变表现出更高的敏感性。当在不同的光强度下生长时,高光适应和低光适应菌株还表现出色素含量和光合装置组成(光系统比)的差异。代表不同菌株的细胞在弱光条件下具有相似的形态,但在强光条件下,弱光适应菌株的细胞变得细长并形成短链细胞。总的来说,这里提出的结果与假说密切相关,但是不同的生态球菌在蘑菇泉微生物垫中占据了不同的生态位,并且适应了变化的光照环境。

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